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Stress tolerance in diapausing embryos of Artemia franciscana is dependent on heat shock factor 1 (Hsf1)
Jiabo Tan,
Thomas H. MacRae
Biochemistry, Genetics and Molecular Biology
科研成果
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期刊稿件
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同行评审
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引用 (Scopus)
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探究 'Stress tolerance in diapausing embryos of Artemia franciscana is dependent on heat shock factor 1 (Hsf1)' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
Artemia Franciscana
100%
Diapausing Embryos
100%
Stress Tolerance
100%
Heat Shock Factor 1 (HSF1)
100%
Franciscans
60%
Cyst
60%
Diapause
40%
Nauplii
40%
Artemin
30%
Transcription Factor
20%
Metabolism
10%
RNA Interference
10%
Complementary DNA (cDNA)
10%
Crustacean
10%
Small Heat Shock Protein (sHSP)
10%
Ferritin
10%
Oviparous
10%
Maximum Stress
10%
Stress Tolerant
10%
Amount of Heat
10%
Diapause Cyst
10%
Molecular Chaperone
10%
Encysted
10%
Biochemistry, Genetics and Molecular Biology
Stress
100%
Heat Shock Transcription Factor 1
100%
Artemia franciscana
100%
Diapause
40%
Nauplius (Larva)
40%
Artemin
30%
Transcription Factors
20%
Metabolic Pathway
10%
Heat Shock Protein
10%
RNA Interference
10%
Ferritin
10%
Crustacea
10%
Oviparity
10%
Immunology and Microbiology
Stress
100%
Artemia franciscana
100%
Heat Shock Transcription Factor 1
100%
Diapause
40%
Nauplius (Larva)
40%
Artemin
30%
Transcription Factors
20%
Heat Shock
10%
Oviparity
10%
RNA Interference
10%
Ferritin
10%
Crustacea
10%
Medicine and Dentistry
Heat Shock Transcription Factor 1
100%
Stress
100%
Diapause
40%
Artemin
30%
Transcription Factors
20%
Oviparity
10%
Small Heat Shock Protein
10%
Complementary DNA
10%
Ferritin
10%
RNA Interference
10%
Chaperone
10%
Pharmacology, Toxicology and Pharmaceutical Science
Artemia franciscana
100%
Heat Shock Transcription Factor 1
100%
Nauplius (Larva)
40%
Artemin
30%
Transcription Factors
20%
Complementary DNA
10%
Chaperone
10%
Ferritin
10%
Crustacea
10%
Small Heat Shock Protein
10%